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Assessment of the Suitability of the One-Step Hydrothermal Method for Preparation of Non-Covalently/Covalently-Bonded TiO2/Graphene-Based Hybrids

机译:评估单步水热法制备非共价/共价键合TiO2 /石墨烯的杂种的适用性

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摘要

A hybrid nanocomposites containing nanocrystalline TiO2 and graphene-related materials (graphene oxide or reduced graphene oxide) were successfully prepared by mechanical mixing and the hydrothermal method in the high-pressure atmosphere. The presented X-ray photoelectron spectroscopy (XPS) study and quantitative elemental analysis confirm similar content of carbon in graphene oxide GO (52 wt% and 46 wt%, respectively) and reduced graphene oxide rGO (92 wt% and 98 wt%, respectively). No chemical interactions between TiO2 and GO/rGO was found. TiO2 nanoparticles were loaded on GO or rGO flakes. However, Fourier transform infrared-diffuse reflection spectroscopy (FTIR/DRS) allowed finding peaks characteristic of GO and rGO. XPS study shows that since the concentration of TiO2 in the samples was no less than 95 wt%, it was assumed that the interactions between TiO2 and graphene should not influence the lower layers of titanium atoms in the TiO2 and they occurred as Ti4+ ions. Hydrothermal treatment at 200 °C did not cause the reduction of GO to rGO in TiO2-GO nanocomposites. In general, the one-step hydrothermal method must be considered to be inefficient for preparation of chemically-bonded composites synthesized from commercially available TiO2 and unfunctionalized graphene sheets obtained from graphite powder.
机译:通过在高压气氛中的机械混合和水热法成功地制备含有纳米晶TiO 2和石墨烯相关材料(石墨烯或石墨烯氧化物)的杂化纳米复合材料。 X射线光电子能谱(XPS)的研究和定量元素分析证实了石墨烯氧化物(分别为52wt%和46wt%)中碳的相似含量,并分别还原的石墨烯氧化物rgo(92wt%和98wt%) )。发现TiO2和Go / Rgo之间的化学相互作用。将TiO2纳米颗粒加载到Go或Rgo薄片上。然而,傅里叶变换红外漫射反射光谱(FTIR / DRS)允许找到Go和Rgo的峰值特性。 XPS研究表明,由于样品中的TiO 2浓度不小于95wt%,因此假设TiO 2和石墨烯之间的相互作用不应影响TiO 2中的钛原子的下层,它们发生为Ti4 +离子。在200°C下的水热处理未导致TiO2-Go纳米复合材料中的转到Rgo的减少。通常,必须考虑一步水热法,用于制备由市售TiO 2合成的化学粘结复合材料和从石墨粉末获得的未官能化石墨烯片。

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